Limited Urban Growth: London's Street Network Dynamics since the 18th Century
arXiv:1206.5298 · doi:10.1371/journal.pone.0069469
Abstract
We investigate the growth dynamics of Greater London defined by the administrative boundary of the Greater London Authority, based on the evolution of its street network during the last two centuries. This is done by employing a unique dataset, consisting of the planar graph representation of nine time slices of Greater London's road network spanning 224 years, from 1786 to 2010. Within this time-frame, we address the concept of the metropolitan area or city in physical terms, in that urban evolution reveals observable transitions in the distribution of relevant geometrical properties. Given that London has a hard boundary enforced by its long-standing green belt, we show that its street network dynamics can be described as a fractal space-filling phenomena up to a capacitated limit, whence its growth can be predicted with a striking level of accuracy. This observation is confirmed by the analytical calculation of key topological properties of the planar graph, such as the topological growth of the network and its average connectivity. This study thus represents an example of a strong violation of Gibrat's law. In particular, we are able to show analytically how London evolves from a more loop-like structure, typical of planned cities, toward a more tree-like structure, typical of self-organized cities. These observations are relevant to the discourse on sustainable urban planning with respect to the control of urban sprawl in many large cities, which have developed under the conditions of spatial constraints imposed by green belts and hard urban boundaries.
PlosOne, in publication
References in corpus (5)
Cited by in corpus (27)
- Urban Spatial Order: Street Network Orientation, Configuration, and Entropy
- Spatial Information and the Legibility of Urban Form: Big Data in Urban Morphology
- Multifractal to monofractal evolution of the London's street network
- Cities and Regions in Britain through hierarchical percolation
- Text authorship identified using the dynamics of word co-occurrence networks
- Exploring the Evolution of London's Street Network in the Information Space: a Dual Approach
- Mapping parcel-level urban areas for a large geographical area
- Planarity and Street Network Representation in Urban Form Analysis
- Towards the automated large-scale reconstruction of past road networks from historical maps
- Multifractal scaling analyses of urban street network structure: the cases of twelve megacities in China
- Robustness and Closeness Centrality for Self-Organized and Planned Cities
- Urban transfer entropy across scales
- Space-time correlations in urban sprawl
- Multiple abrupt phase transitions in urban transport congestion
- The Morphology and Circuity of Walkable and Drivable Street Networks
- Functionally Fractal Urban Networks: Geospatial Co-location and Homogeneity of Infrastructure
- Network analysis of named entity co-occurrences in written texts
- Memory endowed US cities and their demographic interactions
- Emergence of spatial transitions in urban congestion dynamics
- A review of the structure of street networks
- Topological street-network characterization through feature-vector and cluster analysis
- Landscape Geometry-based Percolation of Traffic in Several Populous Cities around the World
- Topological Properties and Temporal Dynamics of Place Networks in Urban Environments
- A distance-based tool-set to track inconsistent urban structures through complex-networks
- On the problem of boundaries and scaling for urban street networks
- From Cities to Series: Complex Networks and Deep Learning for Improved Spatial and Temporal Analytics*
- Extraction Urban Clusters from Geospatial Data: A Case Study from Switzerland